Mattila Heta, Valev Dimitar, Havurinne Vesa, Khorobrykh Sergey, Virtanen Olli, Antinluoma Mikko, Mishra Kumud B, Tyystjärvi Esa
Department of Biochemistry/Molecular Plant Biology, University of Turku, Turku, Finland.
Global Change Research Institute, CAS, Bělidla, Brno, Czech Republic.
AoB Plants. 2018 May 4;10(3):ply028. doi: 10.1093/aobpla/ply028. eCollection 2018 Jun.
Autumn senescence of deciduous trees is characterized by chlorophyll degradation and flavonoid synthesis. In the present study, chlorophyll and flavonol contents were measured every morning and evening during the whole autumn with a non-destructive method from individual leaves of , , and . In most of the studied trees, the chlorophyll content of each individual leaf remained constant until a phase of rapid degradation commenced. The fast phase lasted only ~1 week and ended with abscission. In , contrary to the other species, the chlorophyll content of leaflets slowly but steadily decreased during the whole autumn, but rapid chlorophyll degradation commenced only prior to leaflet abscission also in this species. An increase in flavonols commonly accompanied the rapid degradation of chlorophyll. The results may suggest that each individual tree leaf retains its photosynthetic activity, reflected by a high chlorophyll content, until a rapid phase of chlorophyll degradation and flavonoid synthesis begins. Therefore, in studies of autumn senescence, leaves whose chlorophyll content is decreasing and leaves with summertime chlorophyll content (i.e. the leaves that have not yet started to degrade chlorophyll) should be treated separately.
落叶树的秋季衰老特征为叶绿素降解和类黄酮合成。在本研究中,采用无损方法,于整个秋季每天早晚测量了来自[树种1]、[树种2]、[树种3]和[树种4]单叶的叶绿素和黄酮醇含量。在大多数被研究的树木中,每片单叶的叶绿素含量在快速降解阶段开始前保持恒定。快速降解阶段仅持续约1周,并以脱落结束。在[树种3]中,与其他物种相反,小叶的叶绿素含量在整个秋季缓慢但稳步下降,但该物种同样仅在小叶脱落前开始快速叶绿素降解。黄酮醇的增加通常伴随着叶绿素的快速降解。结果可能表明,每片单叶在叶绿素快速降解和类黄酮合成开始之前,都保持着由高叶绿素含量反映的光合活性。因此,在秋季衰老研究中,叶绿素含量正在下降的叶片和具有夏季叶绿素含量的叶片(即尚未开始降解叶绿素的叶片)应分开处理。